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    • 7. 发明申请
    • RECYCLABLE COMPOSITE CONTAINER
    • 可回收的复合容器
    • WO2011143754A1
    • 2011-11-24
    • PCT/CA2011/000580
    • 2011-05-16
    • ABZAC CANADA INC.GUERTIN, RichardD'ANGLADE, Pierre-MichelEXAME, Evans
    • GUERTIN, RichardD'ANGLADE, Pierre-MichelEXAME, Evans
    • B65D3/04B65D3/26B65D41/04B65D41/16B65D43/04B65D6/02B65D6/34B65D8/00
    • B65D25/16B65D15/08
    • The present invention provides a recyclable composite container. The recyclable composite container comprises a cardboard hollow body having an open end defining an opening. The body is formed by a sidewall having an inwardly rolled rim at the open end. The container also comprises a framing element which is removably connectable to the open end of the cardboard hollow body. The framing element has a peripheral portion and a hook-shaped connector linked to this peripheral portion. The connector is for engaging with the inwardly rolled rim of the cardboard hollow body. Such construction thereby allows connection of the framing element to the cardboard hollow body by hooking the connector to the rim of the cardboard hollow body, and disconnection of the framing element from the cardboard hollow body by pulling the framing element so as to disengage the connector from the rim.
    • 本发明提供一种可回收的复合容器。 可回收复合容器包括具有限定开口的开口端的纸板中空体。 主体由在开口端具有向内滚动的边缘的侧壁形成。 容器还包括框架元件,其可移除地连接到纸板中空体的开口端。 框架元件具有连接到该周边部分的周边部分和钩形连接器。 连接器用于与纸板中空体的向内滚动的边缘接合。 这样的结构允许框架元件通过将连接器连接到纸板中空体的边缘而将框架元件连接到纸板中空体,并且通过拉动框架元件将框架元件与纸板中空体断开,从而使连接器脱离 边缘
    • 8. 发明申请
    • CONTAINER ARRANGEMENT
    • 集装箱安排
    • WO9216419A3
    • 1992-11-26
    • PCT/EP9200521
    • 1992-03-10
    • BRAUN PEBRA GMBH
    • BATIC MARCO
    • B65D6/34B65D8/08B65D21/02
    • B65D21/0216B65D21/0215
    • A container arrangement comprises a plurality of stackable plastics containers (12) which have a container base (30) and four side walls (24, 26) which project above the container base, are connected to each other at rounded corners (22) and form a common upper rim (34). The container arrangement can support high stacking and transport loads despite the thin walls of the containers. To this end, load-bearing columns (18, 20) made of the same plastics material as the container, which project essentially vertically above the container base, are monolithically incorporated on the inner wall of the container in the region of the corners (22) of the container and the side walls (26). The lower end of the load-bearing columns (18, 20) is connected to the container base (30), while the upper faces (32, 32') are arranged at a distance (d) below the upper edge (34) of the container and form a supporting surface for a second container (12) placed on top of the first and whose base (30) engages in the inside of the first container. The container is made of a material consisting of a high-strength reaction plastic based on polydicyclopentadiene.